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Friction stir processing parameters and property distributions in cast nickel aluminum bronze

机译:铸造镍铝青铜的摩擦搅拌工艺参数及性能分布

摘要

Cast nickel-aluminum bronze (NAB) alloy is specified for many marine applications, including ship propellers, due to its excellent corrosion-resistance combined with acceptable mechanical properties. Friction stir processing (FSP) can be used to improve the alloyâ s mechanical properties by localized microstructure modification in the cast material. FSP converts an as-cast microstructure to a wrought condition in the absence of macroscopic shape change, closes porosity, and provides a means to surface harden the castings. The closure of porosity near the surface of the material may shorten the manufacturing and processing time for ship propellers. The surface hardening of cast NAB alloy can be used to increase the wear life of ship propellers. Rockwell Scientific Corporation (now Teledyne Scientific Corporation) supplied three Nickel Aluminum Bronze alloy plates which have been friction stir processed in a raster pattern under a Defense Advanced Research Project Agency (DARPA) project. Each plate had been processed using a different tool RPM and IPM (inches per minute of transverse) combination. Miniature tensile samples were sectioned from the FSP zone and surrounding base metal and mechanical property distributions were determined in these regions. The material within the FSP zone exhibited consistently higher yield strengths, ultimate tensile strengths, and ductilities than the as-cast base metal.
机译:铸造镍铝青铜(NAB)合金由于其出色的耐腐蚀性和可接受的机械性能而被指定用于许多船舶应用,包括船用螺旋桨。搅拌摩擦加工(FSP)可用于通过铸造材料中的局部微观结构改性来改善合金的机械性能。在没有宏观形状变化的情况下,FSP将铸态组织转变为变形状态,闭孔,并提供一种使铸件表面硬化的方法。封闭材料表面附近的孔隙可能会缩短船用螺旋桨的制造和加工时间。铸造的NAB合金的表面硬化可用于延长船用螺旋桨的磨损寿命。罗克韦尔科学公司(现为Teledyne科学公司)提供了三块镍铝青铜合金板,这些板已根据国防高级研究计划局(DARPA)项目以光栅模式进行了摩擦搅拌处理。使用不同的工具RPM和IPM(横向每分钟英寸)组合对每个板进行了处理。从FSP区域切出微型拉伸样品,并确定周围的贱金属,并确定这些区域的机械性能分布。与铸态母材相比,FSP区内的材料表现出始终如一的更高的屈服强度,极限抗拉强度和延展性。

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  • 作者

    Rosemark Brian P.;

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  • 年度 2006
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  • 原文格式 PDF
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  • 入库时间 2022-08-20 20:55:58

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